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模拟异双功能降解剂介导的三元复合物形成和靶向蛋白质降解中的协同效应。

Modeling the Effect of Cooperativity in Ternary Complex Formation and Targeted Protein Degradation Mediated by Heterobifunctional Degraders.

作者信息

Park Daniel, Izaguirre Jesus, Coffey Rory, Xu Huafeng

机构信息

Roivant Discovery, New York, New York10036, United States.

出版信息

ACS Bio Med Chem Au. 2022 Nov 15;3(1):74-86. doi: 10.1021/acsbiomedchemau.2c00037. eCollection 2023 Feb 15.

Abstract

Chemically induced proximity between certain endogenous enzymes and a protein of interest (POI) inside cells may cause post-translational modifications to the POI with biological consequences and potential therapeutic effects. Heterobifunctional (HBF) molecules that bind with one functional part to a target POI and with the other to an E3 ligase induce the formation of a target-HBF-E3 ternary complex, which can lead to ubiquitination and proteasomal degradation of the POI. Targeted protein degradation (TPD) by HBFs offers a promising approach to modulate disease-associated proteins, especially those that are intractable using other therapeutic approaches, such as enzymatic inhibition. The three-way interactions among the HBF, the target POI, and the ligase-including the protein-protein interaction between the POI and the ligase-contribute to the stability of the ternary complex, manifested as positive or negative binding cooperativity in its formation. How such cooperativity affects HBF-mediated degradation is an open question. In this work, we develop a pharmacodynamic model that describes the kinetics of the key reactions in the TPD process, and we use this model to investigate the role of cooperativity in the ternary complex formation and in the target POI degradation. Our model establishes the quantitative connection between the ternary complex stability and the degradation efficiency through the former's effect on the rate of catalytic turnover. We also develop a statistical inference model for determining cooperativity in intracellular ternary complex formation from cellular assay data and demonstrate it by quantifying the change in cooperativity due to site-directed mutagenesis at the POI-ligase interface of the SMARCA2-ACBI1-VHL ternary complex. Our pharmacodynamic model provides a quantitative framework to dissect the complex HBF-mediated TPD process and may inform the rational design of effective HBF degraders.

摘要

细胞内某些内源性酶与目标蛋白(POI)之间的化学诱导接近可能会导致POI发生翻译后修饰,从而产生生物学后果和潜在的治疗效果。异双功能(HBF)分子的一个功能部分与目标POI结合,另一个功能部分与E3连接酶结合,可诱导形成目标-HBF-E3三元复合物,这可能导致POI的泛素化和蛋白酶体降解。HBF介导的靶向蛋白质降解(TPD)为调节疾病相关蛋白提供了一种有前景的方法,尤其是那些使用其他治疗方法(如酶抑制)难以处理的蛋白。HBF、目标POI和连接酶之间的三方相互作用——包括POI与连接酶之间的蛋白质-蛋白质相互作用——有助于三元复合物的稳定性,表现为其形成过程中的正或负结合协同性。这种协同性如何影响HBF介导的降解仍是一个悬而未决的问题。在这项工作中,我们开发了一个药效学模型来描述TPD过程中关键反应的动力学,并用这个模型来研究协同性在三元复合物形成和目标POI降解中的作用。我们的模型通过三元复合物稳定性对催化周转速率的影响,建立了三元复合物稳定性与降解效率之间的定量联系。我们还开发了一个统计推断模型,用于根据细胞实验数据确定细胞内三元复合物形成中的协同性,并通过量化SMARCA2-ACBI1-VHL三元复合物中POI-连接酶界面定点诱变导致的协同性变化来进行验证。我们的药效学模型提供了一个定量框架,以剖析复杂的HBF介导的TPD过程,并可能为有效HBF降解剂的合理设计提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac3e/10125322/bae756ed50e6/bg2c00037_0002.jpg

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